#include "acpi.h"
#include "accommon.h"
#include "acdisasm.h"
#include "actables.h"
#define _COMPONENT ACPI_CA_DISASSEMBLER
ACPI_MODULE_NAME ("dmtbdump2")
void
AcpiDmDumpIort (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
ACPI_TABLE_IORT *Iort;
ACPI_IORT_NODE *IortNode;
ACPI_IORT_ITS_GROUP *IortItsGroup = NULL;
ACPI_IORT_SMMU *IortSmmu = NULL;
UINT32 Offset;
UINT32 NodeOffset;
UINT32 Length;
ACPI_DMTABLE_INFO *InfoTable;
char *String;
UINT32 i;
Status = AcpiDmDumpTable (Table->Length, 0, Table, 0, AcpiDmTableInfoIort);
if (ACPI_FAILURE (Status))
{
return;
}
Iort = ACPI_CAST_PTR (ACPI_TABLE_IORT, Table);
Offset = sizeof (ACPI_TABLE_IORT);
if (Iort->NodeOffset > Offset)
{
Status = AcpiDmDumpTable (Table->Length, Offset, Table,
Iort->NodeOffset - Offset, AcpiDmTableInfoIortPad);
if (ACPI_FAILURE (Status))
{
return;
}
}
Offset = Iort->NodeOffset;
while (Offset < Table->Length)
{
IortNode = ACPI_ADD_PTR (ACPI_IORT_NODE, Table, Offset);
AcpiOsPrintf ("\n");
Length = ACPI_OFFSET (ACPI_IORT_NODE, NodeData);
Status = AcpiDmDumpTable (Table->Length, Offset,
IortNode, Length, AcpiDmTableInfoIortHdr);
if (ACPI_FAILURE (Status))
{
return;
}
NodeOffset = Length;
switch (IortNode->Type)
{
case ACPI_IORT_NODE_ITS_GROUP:
InfoTable = AcpiDmTableInfoIort0;
Length = ACPI_OFFSET (ACPI_IORT_ITS_GROUP, Identifiers);
IortItsGroup = ACPI_ADD_PTR (ACPI_IORT_ITS_GROUP, IortNode, NodeOffset);
break;
case ACPI_IORT_NODE_NAMED_COMPONENT:
InfoTable = AcpiDmTableInfoIort1;
Length = ACPI_OFFSET (ACPI_IORT_NAMED_COMPONENT, DeviceName);
String = ACPI_ADD_PTR (char, IortNode, NodeOffset + Length);
Length += strlen (String) + 1;
break;
case ACPI_IORT_NODE_PCI_ROOT_COMPLEX:
InfoTable = AcpiDmTableInfoIort2;
Length = IortNode->Length - NodeOffset;
break;
case ACPI_IORT_NODE_SMMU:
InfoTable = AcpiDmTableInfoIort3;
Length = ACPI_OFFSET (ACPI_IORT_SMMU, Interrupts);
IortSmmu = ACPI_ADD_PTR (ACPI_IORT_SMMU, IortNode, NodeOffset);
break;
case ACPI_IORT_NODE_SMMU_V3:
InfoTable = AcpiDmTableInfoIort4;
Length = IortNode->Length - NodeOffset;
break;
case ACPI_IORT_NODE_PMCG:
InfoTable = AcpiDmTableInfoIort5;
Length = IortNode->Length - NodeOffset;
break;
default:
AcpiOsPrintf ("\n**** Unknown IORT node type 0x%X\n",
IortNode->Type);
if (!IortNode->Length)
{
AcpiOsPrintf ("Invalid zero length IORT node\n");
return;
}
goto NextSubtable;
}
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset + NodeOffset,
ACPI_ADD_PTR (ACPI_IORT_NODE, IortNode, NodeOffset),
Length, InfoTable);
if (ACPI_FAILURE (Status))
{
return;
}
NodeOffset += Length;
switch (IortNode->Type)
{
case ACPI_IORT_NODE_ITS_GROUP:
if (IortItsGroup)
{
for (i = 0; i < IortItsGroup->ItsCount; i++)
{
Status = AcpiDmDumpTable (Table->Length, Offset + NodeOffset,
ACPI_ADD_PTR (ACPI_IORT_NODE, IortNode, NodeOffset),
4, AcpiDmTableInfoIort0a);
NodeOffset += 4;
}
}
break;
case ACPI_IORT_NODE_NAMED_COMPONENT:
if (IortNode->Length > NodeOffset)
{
Status = AcpiDmDumpTable (Table->Length, Offset + NodeOffset,
Table, IortNode->Length - NodeOffset,
AcpiDmTableInfoIort1a);
if (ACPI_FAILURE (Status))
{
return;
}
}
break;
case ACPI_IORT_NODE_SMMU:
AcpiOsPrintf ("\n");
if (IortSmmu)
{
Length = 2 * sizeof (UINT64);
NodeOffset = IortSmmu->GlobalInterruptOffset;
Status = AcpiDmDumpTable (Table->Length, Offset + NodeOffset,
ACPI_ADD_PTR (ACPI_IORT_NODE, IortNode, NodeOffset),
Length, AcpiDmTableInfoIort3a);
if (ACPI_FAILURE (Status))
{
return;
}
NodeOffset = IortSmmu->ContextInterruptOffset;
for (i = 0; i < IortSmmu->ContextInterruptCount; i++)
{
Status = AcpiDmDumpTable (Table->Length, Offset + NodeOffset,
ACPI_ADD_PTR (ACPI_IORT_NODE, IortNode, NodeOffset),
8, AcpiDmTableInfoIort3b);
if (ACPI_FAILURE (Status))
{
return;
}
NodeOffset += 8;
}
NodeOffset = IortSmmu->PmuInterruptOffset;
for (i = 0; i < IortSmmu->PmuInterruptCount; i++)
{
Status = AcpiDmDumpTable (Table->Length, Offset + NodeOffset,
ACPI_ADD_PTR (ACPI_IORT_NODE, IortNode, NodeOffset),
8, AcpiDmTableInfoIort3c);
if (ACPI_FAILURE (Status))
{
return;
}
NodeOffset += 8;
}
}
break;
default:
break;
}
NodeOffset = IortNode->MappingOffset;
for (i = 0; i < IortNode->MappingCount; i++)
{
AcpiOsPrintf ("\n");
Length = sizeof (ACPI_IORT_ID_MAPPING);
Status = AcpiDmDumpTable (Table->Length, Offset + NodeOffset,
ACPI_ADD_PTR (ACPI_IORT_NODE, IortNode, NodeOffset),
Length, AcpiDmTableInfoIortMap);
if (ACPI_FAILURE (Status))
{
return;
}
NodeOffset += Length;
}
NextSubtable:
Offset += IortNode->Length;
IortNode = ACPI_ADD_PTR (ACPI_IORT_NODE, IortNode, IortNode->Length);
}
}
static UINT8 EntrySizes[] = {4,8,16,32};
void
AcpiDmDumpIvrs (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
UINT32 Offset = sizeof (ACPI_TABLE_IVRS);
UINT32 EntryOffset;
UINT32 EntryLength;
UINT32 EntryType;
ACPI_IVRS_DE_HEADER *DeviceEntry;
ACPI_IVRS_HEADER *Subtable;
ACPI_DMTABLE_INFO *InfoTable;
Status = AcpiDmDumpTable (Table->Length, 0, Table, 0, AcpiDmTableInfoIvrs);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable = ACPI_ADD_PTR (ACPI_IVRS_HEADER, Table, Offset);
while (Offset < Table->Length)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable,
Subtable->Length, AcpiDmTableInfoIvrsHdr);
if (ACPI_FAILURE (Status))
{
return;
}
switch (Subtable->Type)
{
case ACPI_IVRS_TYPE_HARDWARE:
InfoTable = AcpiDmTableInfoIvrs0;
break;
case ACPI_IVRS_TYPE_MEMORY1:
case ACPI_IVRS_TYPE_MEMORY2:
case ACPI_IVRS_TYPE_MEMORY3:
InfoTable = AcpiDmTableInfoIvrs1;
break;
default:
AcpiOsPrintf ("\n**** Unknown IVRS subtable type 0x%X\n",
Subtable->Type);
if (!Subtable->Length)
{
AcpiOsPrintf ("Invalid zero length subtable\n");
return;
}
goto NextSubtable;
}
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable,
Subtable->Length, InfoTable);
if (ACPI_FAILURE (Status))
{
return;
}
if (Subtable->Type == ACPI_IVRS_TYPE_HARDWARE)
{
EntryOffset = Offset + sizeof (ACPI_IVRS_HARDWARE);
DeviceEntry = ACPI_ADD_PTR (ACPI_IVRS_DE_HEADER, Subtable,
sizeof (ACPI_IVRS_HARDWARE));
while (EntryOffset < (Offset + Subtable->Length))
{
AcpiOsPrintf ("\n");
EntryType = DeviceEntry->Type;
EntryLength = EntrySizes [EntryType >> 6];
switch (EntryType)
{
case ACPI_IVRS_TYPE_PAD4:
case ACPI_IVRS_TYPE_ALL:
case ACPI_IVRS_TYPE_SELECT:
case ACPI_IVRS_TYPE_START:
case ACPI_IVRS_TYPE_END:
InfoTable = AcpiDmTableInfoIvrs4;
break;
case ACPI_IVRS_TYPE_ALIAS_SELECT:
case ACPI_IVRS_TYPE_ALIAS_START:
InfoTable = AcpiDmTableInfoIvrs8a;
break;
case ACPI_IVRS_TYPE_PAD8:
case ACPI_IVRS_TYPE_EXT_SELECT:
case ACPI_IVRS_TYPE_EXT_START:
InfoTable = AcpiDmTableInfoIvrs8b;
break;
case ACPI_IVRS_TYPE_SPECIAL:
InfoTable = AcpiDmTableInfoIvrs8c;
break;
default:
InfoTable = AcpiDmTableInfoIvrs4;
AcpiOsPrintf (
"\n**** Unknown IVRS device entry type/length: "
"0x%.2X/0x%X at offset 0x%.4X: (header below)\n",
EntryType, EntryLength, EntryOffset);
break;
}
Status = AcpiDmDumpTable (Table->Length, EntryOffset,
DeviceEntry, EntryLength, InfoTable);
if (ACPI_FAILURE (Status))
{
return;
}
EntryOffset += EntryLength;
DeviceEntry = ACPI_ADD_PTR (ACPI_IVRS_DE_HEADER, DeviceEntry,
EntryLength);
}
}
NextSubtable:
Offset += Subtable->Length;
Subtable = ACPI_ADD_PTR (ACPI_IVRS_HEADER, Subtable, Subtable->Length);
}
}
void
AcpiDmDumpLpit (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
ACPI_LPIT_HEADER *Subtable;
UINT32 Length = Table->Length;
UINT32 Offset = sizeof (ACPI_TABLE_LPIT);
ACPI_DMTABLE_INFO *InfoTable;
UINT32 SubtableLength;
Subtable = ACPI_ADD_PTR (ACPI_LPIT_HEADER, Table, Offset);
while (Offset < Table->Length)
{
Status = AcpiDmDumpTable (Length, Offset, Subtable,
sizeof (ACPI_LPIT_HEADER), AcpiDmTableInfoLpitHdr);
if (ACPI_FAILURE (Status))
{
return;
}
switch (Subtable->Type)
{
case ACPI_LPIT_TYPE_NATIVE_CSTATE:
InfoTable = AcpiDmTableInfoLpit0;
SubtableLength = sizeof (ACPI_LPIT_NATIVE);
break;
default:
AcpiOsPrintf ("\n**** Unknown LPIT subtable type 0x%X\n",
Subtable->Type);
return;
}
Status = AcpiDmDumpTable (Length, Offset, Subtable,
SubtableLength, InfoTable);
if (ACPI_FAILURE (Status))
{
return;
}
AcpiOsPrintf ("\n");
Offset += SubtableLength;
Subtable = ACPI_ADD_PTR (ACPI_LPIT_HEADER, Subtable, SubtableLength);
}
}
void
AcpiDmDumpMadt (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
ACPI_SUBTABLE_HEADER *Subtable;
UINT32 Length = Table->Length;
UINT32 Offset = sizeof (ACPI_TABLE_MADT);
ACPI_DMTABLE_INFO *InfoTable;
Status = AcpiDmDumpTable (Length, 0, Table, 0, AcpiDmTableInfoMadt);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable = ACPI_ADD_PTR (ACPI_SUBTABLE_HEADER, Table, Offset);
while (Offset < Table->Length)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Length, Offset, Subtable,
Subtable->Length, AcpiDmTableInfoMadtHdr);
if (ACPI_FAILURE (Status))
{
return;
}
switch (Subtable->Type)
{
case ACPI_MADT_TYPE_LOCAL_APIC:
InfoTable = AcpiDmTableInfoMadt0;
break;
case ACPI_MADT_TYPE_IO_APIC:
InfoTable = AcpiDmTableInfoMadt1;
break;
case ACPI_MADT_TYPE_INTERRUPT_OVERRIDE:
InfoTable = AcpiDmTableInfoMadt2;
break;
case ACPI_MADT_TYPE_NMI_SOURCE:
InfoTable = AcpiDmTableInfoMadt3;
break;
case ACPI_MADT_TYPE_LOCAL_APIC_NMI:
InfoTable = AcpiDmTableInfoMadt4;
break;
case ACPI_MADT_TYPE_LOCAL_APIC_OVERRIDE:
InfoTable = AcpiDmTableInfoMadt5;
break;
case ACPI_MADT_TYPE_IO_SAPIC:
InfoTable = AcpiDmTableInfoMadt6;
break;
case ACPI_MADT_TYPE_LOCAL_SAPIC:
InfoTable = AcpiDmTableInfoMadt7;
break;
case ACPI_MADT_TYPE_INTERRUPT_SOURCE:
InfoTable = AcpiDmTableInfoMadt8;
break;
case ACPI_MADT_TYPE_LOCAL_X2APIC:
InfoTable = AcpiDmTableInfoMadt9;
break;
case ACPI_MADT_TYPE_LOCAL_X2APIC_NMI:
InfoTable = AcpiDmTableInfoMadt10;
break;
case ACPI_MADT_TYPE_GENERIC_INTERRUPT:
InfoTable = AcpiDmTableInfoMadt11;
break;
case ACPI_MADT_TYPE_GENERIC_DISTRIBUTOR:
InfoTable = AcpiDmTableInfoMadt12;
break;
case ACPI_MADT_TYPE_GENERIC_MSI_FRAME:
InfoTable = AcpiDmTableInfoMadt13;
break;
case ACPI_MADT_TYPE_GENERIC_REDISTRIBUTOR:
InfoTable = AcpiDmTableInfoMadt14;
break;
case ACPI_MADT_TYPE_GENERIC_TRANSLATOR:
InfoTable = AcpiDmTableInfoMadt15;
break;
default:
AcpiOsPrintf ("\n**** Unknown MADT subtable type 0x%X\n\n",
Subtable->Type);
if (!Subtable->Length)
{
AcpiOsPrintf ("Invalid zero length subtable\n");
return;
}
goto NextSubtable;
}
Status = AcpiDmDumpTable (Length, Offset, Subtable,
Subtable->Length, InfoTable);
if (ACPI_FAILURE (Status))
{
return;
}
NextSubtable:
Offset += Subtable->Length;
Subtable = ACPI_ADD_PTR (ACPI_SUBTABLE_HEADER, Subtable,
Subtable->Length);
}
}
void
AcpiDmDumpMcfg (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
UINT32 Offset = sizeof (ACPI_TABLE_MCFG);
ACPI_MCFG_ALLOCATION *Subtable;
Status = AcpiDmDumpTable (Table->Length, 0, Table, 0, AcpiDmTableInfoMcfg);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable = ACPI_ADD_PTR (ACPI_MCFG_ALLOCATION, Table, Offset);
while (Offset < Table->Length)
{
if (Offset + sizeof (ACPI_MCFG_ALLOCATION) > Table->Length)
{
AcpiOsPrintf ("Warning: there are %u invalid trailing bytes\n",
sizeof (ACPI_MCFG_ALLOCATION) - (Offset - Table->Length));
return;
}
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable,
sizeof (ACPI_MCFG_ALLOCATION), AcpiDmTableInfoMcfg0);
if (ACPI_FAILURE (Status))
{
return;
}
Offset += sizeof (ACPI_MCFG_ALLOCATION);
Subtable = ACPI_ADD_PTR (ACPI_MCFG_ALLOCATION, Subtable,
sizeof (ACPI_MCFG_ALLOCATION));
}
}
void
AcpiDmDumpMpst (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
UINT32 Offset = sizeof (ACPI_TABLE_MPST);
ACPI_MPST_POWER_NODE *Subtable0;
ACPI_MPST_POWER_STATE *Subtable0A;
ACPI_MPST_COMPONENT *Subtable0B;
ACPI_MPST_DATA_HDR *Subtable1;
ACPI_MPST_POWER_DATA *Subtable2;
UINT16 SubtableCount;
UINT32 PowerStateCount;
UINT32 ComponentCount;
Status = AcpiDmDumpTable (Table->Length, 0, Table, 0, AcpiDmTableInfoMpst);
if (ACPI_FAILURE (Status))
{
return;
}
SubtableCount = (ACPI_CAST_PTR (ACPI_TABLE_MPST, Table))->PowerNodeCount;
Subtable0 = ACPI_ADD_PTR (ACPI_MPST_POWER_NODE, Table, Offset);
while ((Offset < Table->Length) && SubtableCount)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable0,
sizeof (ACPI_MPST_POWER_NODE), AcpiDmTableInfoMpst0);
if (ACPI_FAILURE (Status))
{
return;
}
PowerStateCount = Subtable0->NumPowerStates;
ComponentCount = Subtable0->NumPhysicalComponents;
Offset += sizeof (ACPI_MPST_POWER_NODE);
Subtable0A = ACPI_ADD_PTR (ACPI_MPST_POWER_STATE, Subtable0,
sizeof (ACPI_MPST_POWER_NODE));
while (PowerStateCount)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable0A,
sizeof (ACPI_MPST_POWER_STATE), AcpiDmTableInfoMpst0A);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable0A++;
PowerStateCount--;
Offset += sizeof (ACPI_MPST_POWER_STATE);
}
Subtable0B = ACPI_CAST_PTR (ACPI_MPST_COMPONENT, Subtable0A);
if (ComponentCount)
{
AcpiOsPrintf ("\n");
}
while (ComponentCount)
{
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable0B,
sizeof (ACPI_MPST_COMPONENT), AcpiDmTableInfoMpst0B);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable0B++;
ComponentCount--;
Offset += sizeof (ACPI_MPST_COMPONENT);
}
SubtableCount--;
Subtable0 = ACPI_ADD_PTR (ACPI_MPST_POWER_NODE, Subtable0,
sizeof (ACPI_MPST_POWER_NODE) +
(sizeof (ACPI_MPST_POWER_STATE) * Subtable0->NumPowerStates) +
(sizeof (ACPI_MPST_COMPONENT) * Subtable0->NumPhysicalComponents));
}
AcpiOsPrintf ("\n");
Subtable1 = ACPI_CAST_PTR (ACPI_MPST_DATA_HDR, Subtable0);
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable1,
sizeof (ACPI_MPST_DATA_HDR), AcpiDmTableInfoMpst1);
if (ACPI_FAILURE (Status))
{
return;
}
SubtableCount = Subtable1->CharacteristicsCount;
Offset += sizeof (ACPI_MPST_DATA_HDR);
Subtable2 = ACPI_ADD_PTR (ACPI_MPST_POWER_DATA, Subtable1,
sizeof (ACPI_MPST_DATA_HDR));
while ((Offset < Table->Length) && SubtableCount)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable2,
sizeof (ACPI_MPST_POWER_DATA), AcpiDmTableInfoMpst2);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable2++;
SubtableCount--;
Offset += sizeof (ACPI_MPST_POWER_DATA);
}
}
void
AcpiDmDumpMsct (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
UINT32 Offset = sizeof (ACPI_TABLE_MSCT);
ACPI_MSCT_PROXIMITY *Subtable;
Status = AcpiDmDumpTable (Table->Length, 0, Table, 0, AcpiDmTableInfoMsct);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable = ACPI_ADD_PTR (ACPI_MSCT_PROXIMITY, Table, Offset);
while (Offset < Table->Length)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable,
sizeof (ACPI_MSCT_PROXIMITY), AcpiDmTableInfoMsct0);
if (ACPI_FAILURE (Status))
{
return;
}
Offset += sizeof (ACPI_MSCT_PROXIMITY);
Subtable = ACPI_ADD_PTR (ACPI_MSCT_PROXIMITY, Subtable,
sizeof (ACPI_MSCT_PROXIMITY));
}
}
void
AcpiDmDumpMtmr (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
UINT32 Offset = sizeof (ACPI_TABLE_MTMR);
ACPI_MTMR_ENTRY *Subtable;
Status = AcpiDmDumpTable (Table->Length, 0, Table, 0, AcpiDmTableInfoMtmr);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable = ACPI_ADD_PTR (ACPI_MTMR_ENTRY, Table, Offset);
while (Offset < Table->Length)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable,
sizeof (ACPI_MTMR_ENTRY), AcpiDmTableInfoMtmr0);
if (ACPI_FAILURE (Status))
{
return;
}
Offset += sizeof (ACPI_MTMR_ENTRY);
Subtable = ACPI_ADD_PTR (ACPI_MTMR_ENTRY, Subtable,
sizeof (ACPI_MTMR_ENTRY));
}
}
void
AcpiDmDumpNfit (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
UINT32 Offset = sizeof (ACPI_TABLE_NFIT);
UINT32 FieldOffset = 0;
UINT32 Length;
ACPI_NFIT_HEADER *Subtable;
ACPI_DMTABLE_INFO *InfoTable;
ACPI_NFIT_INTERLEAVE *Interleave = NULL;
ACPI_NFIT_SMBIOS *SmbiosInfo = NULL;
ACPI_NFIT_FLUSH_ADDRESS *Hint = NULL;
UINT32 i;
Status = AcpiDmDumpTable (Table->Length, 0, Table, 0, AcpiDmTableInfoNfit);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable = ACPI_ADD_PTR (ACPI_NFIT_HEADER, Table, Offset);
while (Offset < Table->Length)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable,
Subtable->Length, AcpiDmTableInfoNfitHdr);
if (ACPI_FAILURE (Status))
{
return;
}
switch (Subtable->Type)
{
case ACPI_NFIT_TYPE_SYSTEM_ADDRESS:
InfoTable = AcpiDmTableInfoNfit0;
break;
case ACPI_NFIT_TYPE_MEMORY_MAP:
InfoTable = AcpiDmTableInfoNfit1;
break;
case ACPI_NFIT_TYPE_INTERLEAVE:
InfoTable = AcpiDmTableInfoNfit2;
Interleave = ACPI_CAST_PTR (ACPI_NFIT_INTERLEAVE, Subtable);
FieldOffset = sizeof (ACPI_NFIT_INTERLEAVE);
break;
case ACPI_NFIT_TYPE_SMBIOS:
SmbiosInfo = ACPI_CAST_PTR (ACPI_NFIT_SMBIOS, Subtable);
InfoTable = AcpiDmTableInfoNfit3;
break;
case ACPI_NFIT_TYPE_CONTROL_REGION:
InfoTable = AcpiDmTableInfoNfit4;
break;
case ACPI_NFIT_TYPE_DATA_REGION:
InfoTable = AcpiDmTableInfoNfit5;
break;
case ACPI_NFIT_TYPE_FLUSH_ADDRESS:
InfoTable = AcpiDmTableInfoNfit6;
Hint = ACPI_CAST_PTR (ACPI_NFIT_FLUSH_ADDRESS, Subtable);
FieldOffset = sizeof (ACPI_NFIT_FLUSH_ADDRESS) - sizeof (UINT64);
break;
case ACPI_NFIT_TYPE_CAPABILITIES:
InfoTable = AcpiDmTableInfoNfit7;
break;
default:
AcpiOsPrintf ("\n**** Unknown NFIT subtable type 0x%X\n",
Subtable->Type);
if (!Subtable->Length)
{
AcpiOsPrintf ("Invalid zero length subtable\n");
return;
}
goto NextSubtable;
}
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable,
Subtable->Length, InfoTable);
if (ACPI_FAILURE (Status))
{
return;
}
switch (Subtable->Type)
{
case ACPI_NFIT_TYPE_INTERLEAVE:
for (i = 0; i < Interleave->LineCount; i++)
{
Status = AcpiDmDumpTable (Table->Length, Offset + FieldOffset,
&Interleave->LineOffset[i],
sizeof (UINT32), AcpiDmTableInfoNfit2a);
if (ACPI_FAILURE (Status))
{
return;
}
FieldOffset += sizeof (UINT32);
}
break;
case ACPI_NFIT_TYPE_SMBIOS:
Length = Subtable->Length -
sizeof (ACPI_NFIT_SMBIOS) + sizeof (UINT8);
if (Length)
{
Status = AcpiDmDumpTable (Table->Length,
sizeof (ACPI_NFIT_SMBIOS) - sizeof (UINT8),
SmbiosInfo,
Length, AcpiDmTableInfoNfit3a);
if (ACPI_FAILURE (Status))
{
return;
}
}
break;
case ACPI_NFIT_TYPE_FLUSH_ADDRESS:
for (i = 0; i < Hint->HintCount; i++)
{
Status = AcpiDmDumpTable (Table->Length, Offset + FieldOffset,
&Hint->HintAddress[i],
sizeof (UINT64), AcpiDmTableInfoNfit6a);
if (ACPI_FAILURE (Status))
{
return;
}
FieldOffset += sizeof (UINT64);
}
break;
default:
break;
}
NextSubtable:
Offset += Subtable->Length;
Subtable = ACPI_ADD_PTR (ACPI_NFIT_HEADER, Subtable, Subtable->Length);
}
}
void
AcpiDmDumpPcct (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
ACPI_PCCT_SUBSPACE *Subtable;
ACPI_DMTABLE_INFO *InfoTable;
UINT32 Length = Table->Length;
UINT32 Offset = sizeof (ACPI_TABLE_PCCT);
Status = AcpiDmDumpTable (Length, 0, Table, 0, AcpiDmTableInfoPcct);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable = ACPI_ADD_PTR (ACPI_PCCT_SUBSPACE, Table, Offset);
while (Offset < Table->Length)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Length, Offset, Subtable,
Subtable->Header.Length, AcpiDmTableInfoPcctHdr);
if (ACPI_FAILURE (Status))
{
return;
}
switch (Subtable->Header.Type)
{
case ACPI_PCCT_TYPE_GENERIC_SUBSPACE:
InfoTable = AcpiDmTableInfoPcct0;
break;
case ACPI_PCCT_TYPE_HW_REDUCED_SUBSPACE:
InfoTable = AcpiDmTableInfoPcct1;
break;
case ACPI_PCCT_TYPE_HW_REDUCED_SUBSPACE_TYPE2:
InfoTable = AcpiDmTableInfoPcct2;
break;
case ACPI_PCCT_TYPE_EXT_PCC_MASTER_SUBSPACE:
InfoTable = AcpiDmTableInfoPcct3;
break;
case ACPI_PCCT_TYPE_EXT_PCC_SLAVE_SUBSPACE:
InfoTable = AcpiDmTableInfoPcct4;
break;
default:
AcpiOsPrintf (
"\n**** Unexpected or unknown PCCT subtable type 0x%X\n\n",
Subtable->Header.Type);
return;
}
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Length, Offset, Subtable,
Subtable->Header.Length, InfoTable);
if (ACPI_FAILURE (Status))
{
return;
}
Offset += Subtable->Header.Length;
Subtable = ACPI_ADD_PTR (ACPI_PCCT_SUBSPACE, Subtable,
Subtable->Header.Length);
}
}
void
AcpiDmDumpPdtt (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
ACPI_PDTT_CHANNEL *Subtable;
UINT32 Length = Table->Length;
UINT32 Offset = sizeof (ACPI_TABLE_PDTT);
Status = AcpiDmDumpTable (Length, 0, Table, 0, AcpiDmTableInfoPdtt);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable = ACPI_ADD_PTR (ACPI_PDTT_CHANNEL, Table, Offset);
while (Offset < Table->Length)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Length, Offset, Subtable,
sizeof (ACPI_PDTT_CHANNEL), AcpiDmTableInfoPdtt0);
if (ACPI_FAILURE (Status))
{
return;
}
Offset += sizeof (ACPI_PDTT_CHANNEL);
Subtable = ACPI_ADD_PTR (ACPI_PDTT_CHANNEL, Subtable,
sizeof (ACPI_PDTT_CHANNEL));
}
}
void
AcpiDmDumpPmtt (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
ACPI_PMTT_HEADER *Subtable;
ACPI_PMTT_HEADER *MemSubtable;
ACPI_PMTT_HEADER *DimmSubtable;
ACPI_PMTT_DOMAIN *DomainArray;
UINT32 Length = Table->Length;
UINT32 Offset = sizeof (ACPI_TABLE_PMTT);
UINT32 MemOffset;
UINT32 DimmOffset;
UINT32 DomainOffset;
UINT32 DomainCount;
Status = AcpiDmDumpTable (Length, 0, Table, 0, AcpiDmTableInfoPmtt);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable = ACPI_ADD_PTR (ACPI_PMTT_HEADER, Table, Offset);
while (Offset < Table->Length)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Length, Offset, Subtable,
Subtable->Length, AcpiDmTableInfoPmttHdr);
if (ACPI_FAILURE (Status))
{
return;
}
if (Subtable->Type != ACPI_PMTT_TYPE_SOCKET)
{
AcpiOsPrintf (
"\n**** Unexpected or unknown PMTT subtable type 0x%X\n\n",
Subtable->Type);
return;
}
Status = AcpiDmDumpTable (Length, Offset, Subtable,
Subtable->Length, AcpiDmTableInfoPmtt0);
if (ACPI_FAILURE (Status))
{
return;
}
MemOffset = sizeof (ACPI_PMTT_SOCKET);
MemSubtable = ACPI_ADD_PTR (ACPI_PMTT_HEADER, Subtable,
sizeof (ACPI_PMTT_SOCKET));
while (((Offset + MemOffset) < Table->Length) &&
(MemOffset < Subtable->Length))
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Length,
Offset + MemOffset, MemSubtable,
MemSubtable->Length, AcpiDmTableInfoPmttHdr);
if (ACPI_FAILURE (Status))
{
return;
}
if (MemSubtable->Type != ACPI_PMTT_TYPE_CONTROLLER)
{
AcpiOsPrintf (
"\n**** Unexpected or unknown PMTT subtable type 0x%X\n\n",
MemSubtable->Type);
return;
}
Status = AcpiDmDumpTable (Length,
Offset + MemOffset, MemSubtable,
MemSubtable->Length, AcpiDmTableInfoPmtt1);
if (ACPI_FAILURE (Status))
{
return;
}
DomainCount = ((ACPI_PMTT_CONTROLLER *) MemSubtable)->DomainCount;
DomainOffset = sizeof (ACPI_PMTT_CONTROLLER);
DomainArray = ACPI_ADD_PTR (ACPI_PMTT_DOMAIN, MemSubtable,
sizeof (ACPI_PMTT_CONTROLLER));
while (((Offset + MemOffset + DomainOffset) < Table->Length) &&
((MemOffset + DomainOffset) < Subtable->Length) &&
DomainCount)
{
Status = AcpiDmDumpTable (Length,
Offset + MemOffset + DomainOffset, DomainArray,
sizeof (ACPI_PMTT_DOMAIN), AcpiDmTableInfoPmtt1a);
if (ACPI_FAILURE (Status))
{
return;
}
DomainOffset += sizeof (ACPI_PMTT_DOMAIN);
DomainArray++;
DomainCount--;
}
if (DomainCount)
{
AcpiOsPrintf (
"\n**** DomainCount exceeds subtable length\n\n");
}
DimmOffset = DomainOffset;
DimmSubtable = ACPI_ADD_PTR (ACPI_PMTT_HEADER, MemSubtable,
DomainOffset);
while (((Offset + MemOffset + DimmOffset) < Table->Length) &&
(DimmOffset < MemSubtable->Length))
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Length,
Offset + MemOffset + DimmOffset, DimmSubtable,
DimmSubtable->Length, AcpiDmTableInfoPmttHdr);
if (ACPI_FAILURE (Status))
{
return;
}
if (DimmSubtable->Type != ACPI_PMTT_TYPE_DIMM)
{
AcpiOsPrintf (
"\n**** Unexpected or unknown PMTT subtable type 0x%X\n\n",
DimmSubtable->Type);
return;
}
Status = AcpiDmDumpTable (Length,
Offset + MemOffset + DimmOffset, DimmSubtable,
DimmSubtable->Length, AcpiDmTableInfoPmtt2);
if (ACPI_FAILURE (Status))
{
return;
}
DimmOffset += DimmSubtable->Length;
DimmSubtable = ACPI_ADD_PTR (ACPI_PMTT_HEADER,
DimmSubtable, DimmSubtable->Length);
}
MemOffset += MemSubtable->Length;
MemSubtable = ACPI_ADD_PTR (ACPI_PMTT_HEADER,
MemSubtable, MemSubtable->Length);
}
Offset += Subtable->Length;
Subtable = ACPI_ADD_PTR (ACPI_PMTT_HEADER,
Subtable, Subtable->Length);
}
}
void
AcpiDmDumpPptt (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
ACPI_SUBTABLE_HEADER *Subtable;
ACPI_PPTT_PROCESSOR *PpttProcessor;
UINT8 Length;
UINT8 SubtableOffset;
UINT32 Offset = sizeof (ACPI_TABLE_FPDT);
ACPI_DMTABLE_INFO *InfoTable;
UINT32 i;
Offset = sizeof (ACPI_TABLE_HEADER);
while (Offset < Table->Length)
{
AcpiOsPrintf ("\n");
Subtable = ACPI_ADD_PTR (ACPI_SUBTABLE_HEADER, Table, Offset);
if (Subtable->Length < sizeof (ACPI_SUBTABLE_HEADER))
{
AcpiOsPrintf ("Invalid subtable length\n");
return;
}
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable,
Subtable->Length, AcpiDmTableInfoPpttHdr);
if (ACPI_FAILURE (Status))
{
return;
}
switch (Subtable->Type)
{
case ACPI_PPTT_TYPE_PROCESSOR:
InfoTable = AcpiDmTableInfoPptt0;
Length = sizeof (ACPI_PPTT_PROCESSOR);
break;
case ACPI_PPTT_TYPE_CACHE:
InfoTable = AcpiDmTableInfoPptt1;
Length = sizeof (ACPI_PPTT_CACHE);
break;
case ACPI_PPTT_TYPE_ID:
InfoTable = AcpiDmTableInfoPptt2;
Length = sizeof (ACPI_PPTT_ID);
break;
default:
AcpiOsPrintf ("\n**** Unknown PPTT subtable type 0x%X\n\n",
Subtable->Type);
goto NextSubtable;
}
if (Subtable->Length < Length)
{
AcpiOsPrintf ("Invalid subtable length\n");
return;
}
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable,
Subtable->Length, InfoTable);
if (ACPI_FAILURE (Status))
{
return;
}
SubtableOffset = Length;
switch (Subtable->Type)
{
case ACPI_PPTT_TYPE_PROCESSOR:
PpttProcessor = ACPI_CAST_PTR (ACPI_PPTT_PROCESSOR, Subtable);
if ((UINT8)(Subtable->Length - SubtableOffset) <
(UINT8)(PpttProcessor->NumberOfPrivResources * 4))
{
AcpiOsPrintf ("Invalid private resource number\n");
return;
}
for (i = 0; i < PpttProcessor->NumberOfPrivResources; i++)
{
Status = AcpiDmDumpTable (Table->Length, Offset + SubtableOffset,
ACPI_ADD_PTR (ACPI_SUBTABLE_HEADER, Subtable, SubtableOffset),
4, AcpiDmTableInfoPptt0a);
SubtableOffset += 4;
}
break;
default:
break;
}
NextSubtable:
Offset += Subtable->Length;
}
}
UINT32
AcpiDmDumpS3pt (
ACPI_TABLE_HEADER *Tables)
{
ACPI_STATUS Status;
UINT32 Offset = sizeof (ACPI_TABLE_S3PT);
ACPI_FPDT_HEADER *Subtable;
ACPI_DMTABLE_INFO *InfoTable;
ACPI_TABLE_S3PT *S3ptTable = ACPI_CAST_PTR (ACPI_TABLE_S3PT, Tables);
Status = AcpiDmDumpTable (Offset, 0, S3ptTable, 0, AcpiDmTableInfoS3pt);
if (ACPI_FAILURE (Status))
{
return 0;
}
Subtable = ACPI_ADD_PTR (ACPI_FPDT_HEADER, S3ptTable, Offset);
while (Offset < S3ptTable->Length)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (S3ptTable->Length, Offset, Subtable,
Subtable->Length, AcpiDmTableInfoS3ptHdr);
if (ACPI_FAILURE (Status))
{
return 0;
}
switch (Subtable->Type)
{
case ACPI_S3PT_TYPE_RESUME:
InfoTable = AcpiDmTableInfoS3pt0;
break;
case ACPI_S3PT_TYPE_SUSPEND:
InfoTable = AcpiDmTableInfoS3pt1;
break;
default:
AcpiOsPrintf ("\n**** Unknown S3PT subtable type 0x%X\n",
Subtable->Type);
if (!Subtable->Length)
{
AcpiOsPrintf ("Invalid zero length subtable\n");
return 0;
}
goto NextSubtable;
}
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (S3ptTable->Length, Offset, Subtable,
Subtable->Length, InfoTable);
if (ACPI_FAILURE (Status))
{
return 0;
}
NextSubtable:
Offset += Subtable->Length;
Subtable = ACPI_ADD_PTR (ACPI_FPDT_HEADER, Subtable, Subtable->Length);
}
return (S3ptTable->Length);
}
void
AcpiDmDumpSdev (
ACPI_TABLE_HEADER *Table)
{
ACPI_STATUS Status;
ACPI_SDEV_HEADER *Subtable;
ACPI_SDEV_PCIE *Pcie;
ACPI_SDEV_NAMESPACE *Namesp;
ACPI_DMTABLE_INFO *InfoTable;
UINT32 Length = Table->Length;
UINT32 Offset = sizeof (ACPI_TABLE_SDEV);
UINT16 PathOffset;
UINT16 PathLength;
UINT16 VendorDataOffset;
UINT16 VendorDataLength;
Status = AcpiDmDumpTable (Length, 0, Table, 0, AcpiDmTableInfoSdev);
if (ACPI_FAILURE (Status))
{
return;
}
Subtable = ACPI_ADD_PTR (ACPI_SDEV_HEADER, Table, Offset);
while (Offset < Table->Length)
{
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable,
Subtable->Length, AcpiDmTableInfoSdevHdr);
if (ACPI_FAILURE (Status))
{
return;
}
switch (Subtable->Type)
{
case ACPI_SDEV_TYPE_NAMESPACE_DEVICE:
InfoTable = AcpiDmTableInfoSdev0;
break;
case ACPI_SDEV_TYPE_PCIE_ENDPOINT_DEVICE:
InfoTable = AcpiDmTableInfoSdev1;
break;
default:
goto NextSubtable;
}
AcpiOsPrintf ("\n");
Status = AcpiDmDumpTable (Table->Length, Offset, Subtable,
Subtable->Length, InfoTable);
if (ACPI_FAILURE (Status))
{
return;
}
switch (Subtable->Type)
{
case ACPI_SDEV_TYPE_NAMESPACE_DEVICE:
Namesp = ACPI_CAST_PTR (ACPI_SDEV_NAMESPACE, Subtable);
PathOffset = Namesp->DeviceIdOffset;
PathLength = Namesp->DeviceIdLength;
if (PathLength)
{
Status = AcpiDmDumpTable (Table->Length, 0,
ACPI_ADD_PTR (UINT8, Namesp, PathOffset),
PathLength, AcpiDmTableInfoSdev0a);
if (ACPI_FAILURE (Status))
{
return;
}
}
VendorDataLength =
Namesp->VendorDataLength;
VendorDataOffset =
Namesp->DeviceIdOffset + Namesp->DeviceIdLength;
if (VendorDataLength)
{
Status = AcpiDmDumpTable (Table->Length, 0,
ACPI_ADD_PTR (UINT8, Namesp, VendorDataOffset),
VendorDataLength, AcpiDmTableInfoSdev1b);
if (ACPI_FAILURE (Status))
{
return;
}
}
break;
case ACPI_SDEV_TYPE_PCIE_ENDPOINT_DEVICE:
Pcie = ACPI_CAST_PTR (ACPI_SDEV_PCIE, Subtable);
PathOffset = Pcie->PathOffset;
PathLength = Pcie->PathLength;
while (PathLength)
{
Status = AcpiDmDumpTable (Table->Length,
PathOffset + Offset,
ACPI_ADD_PTR (UINT8, Pcie, PathOffset),
sizeof (ACPI_SDEV_PCIE_PATH), AcpiDmTableInfoSdev1a);
if (ACPI_FAILURE (Status))
{
return;
}
PathOffset += sizeof (ACPI_SDEV_PCIE_PATH);
PathLength -= sizeof (ACPI_SDEV_PCIE_PATH);
}
VendorDataLength = Pcie->VendorDataLength;
VendorDataOffset = Pcie->PathOffset + Pcie->PathLength;
if (VendorDataLength)
{
Status = AcpiDmDumpTable (Table->Length, 0,
ACPI_ADD_PTR (UINT8, Pcie, VendorDataOffset),
VendorDataLength, AcpiDmTableInfoSdev1b);
}
break;
default:
goto NextSubtable;
}
NextSubtable:
Offset += Subtable->Length;
Subtable = ACPI_ADD_PTR (ACPI_SDEV_HEADER, Subtable,
Subtable->Length);
}
}